Fix watchpoint-stops-at-right-insn.exp
[deliverable/binutils-gdb.git] / gdb / gdbserver / target.h
CommitLineData
ce3a066d 1/* Target operations for the remote server for GDB.
ecd75fc8 2 Copyright (C) 2002-2014 Free Software Foundation, Inc.
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3
4 Contributed by MontaVista Software.
5
6 This file is part of GDB.
7
8 This program is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
a9762ec7 10 the Free Software Foundation; either version 3 of the License, or
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11 (at your option) any later version.
12
13 This program is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
17
18 You should have received a copy of the GNU General Public License
a9762ec7 19 along with this program. If not, see <http://www.gnu.org/licenses/>. */
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20
21#ifndef TARGET_H
22#define TARGET_H
23
721ec300 24#include "target/target.h"
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25#include "target/resume.h"
26#include "target/wait.h"
27#include "target/waitstatus.h"
802e8e6d 28#include "mem-break.h"
3360c0bf 29
6a271cae 30struct emit_ops;
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31struct btrace_target_info;
32struct buffer;
6a6bbd9d 33struct process_info;
6a271cae 34
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35/* This structure describes how to resume a particular thread (or all
36 threads) based on the client's request. If thread is -1, then this
37 entry applies to all threads. These are passed around as an
38 array. */
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39
40struct thread_resume
41{
95954743 42 ptid_t thread;
64386c31 43
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44 /* How to "resume". */
45 enum resume_kind kind;
64386c31 46
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47 /* If non-zero, send this signal when we resume, or to stop the
48 thread. If stopping a thread, and this is 0, the target should
49 stop the thread however it best decides to (e.g., SIGSTOP on
30d50328 50 linux; SuspendThread on win32). This is a host signal value (not
2ea28649 51 enum gdb_signal). */
64386c31 52 int sig;
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53
54 /* Range to single step within. Valid only iff KIND is resume_step.
55
56 Single-step once, and then continuing stepping as long as the
57 thread stops in this range. (If the range is empty
58 [STEP_RANGE_START == STEP_RANGE_END], then this is a single-step
59 request.) */
60 CORE_ADDR step_range_start; /* Inclusive */
61 CORE_ADDR step_range_end; /* Exclusive */
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62};
63
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64struct target_ops
65{
66 /* Start a new process.
67
68 PROGRAM is a path to the program to execute.
69 ARGS is a standard NULL-terminated array of arguments,
70 to be passed to the inferior as ``argv''.
71
a9fa9f7d 72 Returns the new PID on success, -1 on failure. Registers the new
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73 process with the process list. */
74
75 int (*create_inferior) (char *program, char **args);
76
77 /* Attach to a running process.
78
79 PID is the process ID to attach to, specified by the user
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80 or a higher layer.
81
82 Returns -1 if attaching is unsupported, 0 on success, and calls
83 error() otherwise. */
ce3a066d 84
a1928bad 85 int (*attach) (unsigned long pid);
ce3a066d 86
95954743 87 /* Kill inferior PID. Return -1 on failure, and 0 on success. */
ce3a066d 88
95954743 89 int (*kill) (int pid);
ce3a066d 90
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91 /* Detach from inferior PID. Return -1 on failure, and 0 on
92 success. */
6ad8ae5c 93
95954743 94 int (*detach) (int pid);
444d6139 95
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96 /* The inferior process has died. Do what is right. */
97
98 void (*mourn) (struct process_info *proc);
99
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100 /* Wait for inferior PID to exit. */
101 void (*join) (int pid);
6ad8ae5c 102
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103 /* Return 1 iff the thread with process ID PID is alive. */
104
95954743 105 int (*thread_alive) (ptid_t pid);
ce3a066d 106
64386c31 107 /* Resume the inferior process. */
ce3a066d 108
2bd7c093 109 void (*resume) (struct thread_resume *resume_info, size_t n);
ce3a066d 110
5b1c542e 111 /* Wait for the inferior process or thread to change state. Store
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112 status through argument pointer STATUS.
113
114 PTID = -1 to wait for any pid to do something, PTID(pid,0,0) to
115 wait for any thread of process pid to do something. Return ptid
116 of child, or -1 in case of error; store status through argument
117 pointer STATUS. OPTIONS is a bit set of options defined as
118 TARGET_W* above. If options contains TARGET_WNOHANG and there's
119 no child stop to report, return is
120 null_ptid/TARGET_WAITKIND_IGNORE. */
ce3a066d 121
95954743 122 ptid_t (*wait) (ptid_t ptid, struct target_waitstatus *status, int options);
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123
124 /* Fetch registers from the inferior process.
125
126 If REGNO is -1, fetch all registers; otherwise, fetch at least REGNO. */
127
442ea881 128 void (*fetch_registers) (struct regcache *regcache, int regno);
aa691b87 129
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130 /* Store registers to the inferior process.
131
132 If REGNO is -1, store all registers; otherwise, store at least REGNO. */
133
442ea881 134 void (*store_registers) (struct regcache *regcache, int regno);
ce3a066d 135
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136 /* Prepare to read or write memory from the inferior process.
137 Targets use this to do what is necessary to get the state of the
138 inferior such that it is possible to access memory.
139
140 This should generally only be called from client facing routines,
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141 such as gdb_read_memory/gdb_write_memory, or the GDB breakpoint
142 insertion routine.
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143
144 Like `read_memory' and `write_memory' below, returns 0 on success
145 and errno on failure. */
146
147 int (*prepare_to_access_memory) (void);
148
149 /* Undo the effects of prepare_to_access_memory. */
150
0146f85b 151 void (*done_accessing_memory) (void);
90d74c30 152
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153 /* Read memory from the inferior process. This should generally be
154 called through read_inferior_memory, which handles breakpoint shadowing.
ce3a066d 155
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156 Read LEN bytes at MEMADDR into a buffer at MYADDR.
157
158 Returns 0 on success and errno on failure. */
ce3a066d 159
f450004a 160 int (*read_memory) (CORE_ADDR memaddr, unsigned char *myaddr, int len);
ce3a066d 161
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162 /* Write memory to the inferior process. This should generally be
163 called through write_inferior_memory, which handles breakpoint shadowing.
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164
165 Write LEN bytes from the buffer at MYADDR to MEMADDR.
166
167 Returns 0 on success and errno on failure. */
168
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169 int (*write_memory) (CORE_ADDR memaddr, const unsigned char *myaddr,
170 int len);
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171
172 /* Query GDB for the values of any symbols we're interested in.
173 This function is called whenever we receive a "qSymbols::"
174 query, which corresponds to every time more symbols (might)
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175 become available. NULL if we aren't interested in any
176 symbols. */
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177
178 void (*look_up_symbols) (void);
e5379b03 179
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180 /* Send an interrupt request to the inferior process,
181 however is appropriate. */
182
183 void (*request_interrupt) (void);
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184
185 /* Read auxiliary vector data from the inferior process.
186
187 Read LEN bytes at OFFSET into a buffer at MYADDR. */
188
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189 int (*read_auxv) (CORE_ADDR offset, unsigned char *myaddr,
190 unsigned int len);
e013ee27 191
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192 /* Returns true if GDB Z breakpoint type TYPE is supported, false
193 otherwise. The type is coded as follows:
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194 '0' - software-breakpoint
195 '1' - hardware-breakpoint
196 '2' - write watchpoint
197 '3' - read watchpoint
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198 '4' - access watchpoint
199 */
200 int (*supports_z_point_type) (char z_type);
201
202 /* Insert and remove a break or watchpoint.
203 Returns 0 on success, -1 on failure and 1 on unsupported. */
e013ee27 204
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205 int (*insert_point) (enum raw_bkpt_type type, CORE_ADDR addr,
206 int size, struct raw_breakpoint *bp);
207 int (*remove_point) (enum raw_bkpt_type type, CORE_ADDR addr,
208 int size, struct raw_breakpoint *bp);
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209
210 /* Returns 1 if target was stopped due to a watchpoint hit, 0 otherwise. */
211
212 int (*stopped_by_watchpoint) (void);
213
1b3f6016 214 /* Returns the address associated with the watchpoint that hit, if any;
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215 returns 0 otherwise. */
216
217 CORE_ADDR (*stopped_data_address) (void);
218
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219 /* Reports the text, data offsets of the executable. This is
220 needed for uclinux where the executable is relocated during load
221 time. */
1b3f6016 222
52fb6437 223 int (*read_offsets) (CORE_ADDR *text, CORE_ADDR *data);
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224
225 /* Fetch the address associated with a specific thread local storage
226 area, determined by the specified THREAD, OFFSET, and LOAD_MODULE.
227 Stores it in *ADDRESS and returns zero on success; otherwise returns
228 an error code. A return value of -1 means this system does not
229 support the operation. */
230
231 int (*get_tls_address) (struct thread_info *thread, CORE_ADDR offset,
232 CORE_ADDR load_module, CORE_ADDR *address);
23181151 233
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234 /* Read/Write from/to spufs using qXfer packets. */
235 int (*qxfer_spu) (const char *annex, unsigned char *readbuf,
236 unsigned const char *writebuf, CORE_ADDR offset, int len);
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237
238 /* Fill BUF with an hostio error packet representing the last hostio
239 error. */
240 void (*hostio_last_error) (char *buf);
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241
242 /* Read/Write OS data using qXfer packets. */
243 int (*qxfer_osdata) (const char *annex, unsigned char *readbuf,
1b3f6016 244 unsigned const char *writebuf, CORE_ADDR offset,
07e059b5 245 int len);
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246
247 /* Read/Write extra signal info. */
248 int (*qxfer_siginfo) (const char *annex, unsigned char *readbuf,
249 unsigned const char *writebuf,
250 CORE_ADDR offset, int len);
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251
252 int (*supports_non_stop) (void);
253
254 /* Enables async target events. Returns the previous enable
255 state. */
256 int (*async) (int enable);
257
258 /* Switch to non-stop (1) or all-stop (0) mode. Return 0 on
259 success, -1 otherwise. */
260 int (*start_non_stop) (int);
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261
262 /* Returns true if the target supports multi-process debugging. */
263 int (*supports_multi_process) (void);
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264
265 /* If not NULL, target-specific routine to process monitor command.
266 Returns 1 if handled, or 0 to perform default processing. */
267 int (*handle_monitor_command) (char *);
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268
269 /* Returns the core given a thread, or -1 if not known. */
270 int (*core_of_thread) (ptid_t);
1570b33e 271
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272 /* Read loadmaps. Read LEN bytes at OFFSET into a buffer at MYADDR. */
273 int (*read_loadmap) (const char *annex, CORE_ADDR offset,
881127c9 274 unsigned char *myaddr, unsigned int len);
78d85199 275
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276 /* Target specific qSupported support. */
277 void (*process_qsupported) (const char *);
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278
279 /* Return 1 if the target supports tracepoints, 0 (or leave the
280 callback NULL) otherwise. */
281 int (*supports_tracepoints) (void);
282
283 /* Read PC from REGCACHE. */
284 CORE_ADDR (*read_pc) (struct regcache *regcache);
285
286 /* Write PC to REGCACHE. */
287 void (*write_pc) (struct regcache *regcache, CORE_ADDR pc);
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288
289 /* Return true if THREAD is known to be stopped now. */
290 int (*thread_stopped) (struct thread_info *thread);
291
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292 /* Read Thread Information Block address. */
293 int (*get_tib_address) (ptid_t ptid, CORE_ADDR *address);
7984d532 294
609086b1 295 /* Pause all threads. If FREEZE, arrange for any resume attempt to
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296 be ignored until an unpause_all call unfreezes threads again.
297 There can be nested calls to pause_all, so a freeze counter
298 should be maintained. */
299 void (*pause_all) (int freeze);
300
301 /* Unpause all threads. Threads that hadn't been resumed by the
302 client should be left stopped. Basically a pause/unpause call
303 pair should not end up resuming threads that were stopped before
304 the pause call. */
305 void (*unpause_all) (int unfreeze);
306
307 /* Cancel all pending breakpoints hits in all threads. */
308 void (*cancel_breakpoints) (void);
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309
310 /* Stabilize all threads. That is, force them out of jump pads. */
311 void (*stabilize_threads) (void);
312
313 /* Install a fast tracepoint jump pad. TPOINT is the address of the
314 tracepoint internal object as used by the IPA agent. TPADDR is
315 the address of tracepoint. COLLECTOR is address of the function
316 the jump pad redirects to. LOCKADDR is the address of the jump
317 pad lock object. ORIG_SIZE is the size in bytes of the
318 instruction at TPADDR. JUMP_ENTRY points to the address of the
319 jump pad entry, and on return holds the address past the end of
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320 the created jump pad. If a trampoline is created by the function,
321 then TRAMPOLINE and TRAMPOLINE_SIZE return the address and size of
322 the trampoline, else they remain unchanged. JJUMP_PAD_INSN is a
323 buffer containing a copy of the instruction at TPADDR.
324 ADJUST_INSN_ADDR and ADJUST_INSN_ADDR_END are output parameters that
325 return the address range where the instruction at TPADDR was relocated
326 to. If an error occurs, the ERR may be used to pass on an error
327 message. */
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328 int (*install_fast_tracepoint_jump_pad) (CORE_ADDR tpoint, CORE_ADDR tpaddr,
329 CORE_ADDR collector,
330 CORE_ADDR lockaddr,
331 ULONGEST orig_size,
332 CORE_ADDR *jump_entry,
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333 CORE_ADDR *trampoline,
334 ULONGEST *trampoline_size,
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335 unsigned char *jjump_pad_insn,
336 ULONGEST *jjump_pad_insn_size,
337 CORE_ADDR *adjusted_insn_addr,
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338 CORE_ADDR *adjusted_insn_addr_end,
339 char *err);
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340
341 /* Return the bytecode operations vector for the current inferior.
342 Returns NULL if bytecode compilation is not supported. */
343 struct emit_ops *(*emit_ops) (void);
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344
345 /* Returns true if the target supports disabling randomization. */
346 int (*supports_disable_randomization) (void);
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347
348 /* Return the minimum length of an instruction that can be safely overwritten
349 for use as a fast tracepoint. */
350 int (*get_min_fast_tracepoint_insn_len) (void);
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351
352 /* Read solib info on SVR4 platforms. */
353 int (*qxfer_libraries_svr4) (const char *annex, unsigned char *readbuf,
354 unsigned const char *writebuf,
355 CORE_ADDR offset, int len);
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356
357 /* Return true if target supports debugging agent. */
358 int (*supports_agent) (void);
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359
360 /* Check whether the target supports branch tracing. */
46917d26 361 int (*supports_btrace) (struct target_ops *);
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362
363 /* Enable branch tracing for @ptid and allocate a branch trace target
364 information struct for reading and for disabling branch trace. */
365 struct btrace_target_info *(*enable_btrace) (ptid_t ptid);
366
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367 /* Disable branch tracing.
368 Returns zero on success, non-zero otherwise. */
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369 int (*disable_btrace) (struct btrace_target_info *tinfo);
370
371 /* Read branch trace data into buffer. We use an int to specify the type
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372 to break a cyclic dependency.
373 Return 0 on success; print an error message into BUFFER and return -1,
374 otherwise. */
375 int (*read_btrace) (struct btrace_target_info *, struct buffer *, int type);
9accd112 376
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377 /* Return true if target supports range stepping. */
378 int (*supports_range_stepping) (void);
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379};
380
381extern struct target_ops *the_target;
382
383void set_target_ops (struct target_ops *);
384
385#define create_inferior(program, args) \
386 (*the_target->create_inferior) (program, args)
387
388#define myattach(pid) \
389 (*the_target->attach) (pid)
390
7255706c 391int kill_inferior (int);
ce3a066d 392
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393#define detach_inferior(pid) \
394 (*the_target->detach) (pid)
6ad8ae5c 395
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396#define mourn_inferior(PROC) \
397 (*the_target->mourn) (PROC)
398
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399#define mythread_alive(pid) \
400 (*the_target->thread_alive) (pid)
401
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402#define fetch_inferior_registers(regcache, regno) \
403 (*the_target->fetch_registers) (regcache, regno)
ce3a066d 404
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405#define store_inferior_registers(regcache, regno) \
406 (*the_target->store_registers) (regcache, regno)
ce3a066d 407
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408#define join_inferior(pid) \
409 (*the_target->join) (pid)
444d6139 410
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411#define target_supports_non_stop() \
412 (the_target->supports_non_stop ? (*the_target->supports_non_stop ) () : 0)
413
414#define target_async(enable) \
415 (the_target->async ? (*the_target->async) (enable) : 0)
416
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417#define target_supports_multi_process() \
418 (the_target->supports_multi_process ? \
419 (*the_target->supports_multi_process) () : 0)
420
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421#define target_process_qsupported(query) \
422 do \
423 { \
424 if (the_target->process_qsupported) \
425 the_target->process_qsupported (query); \
426 } while (0)
1570b33e 427
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428#define target_supports_tracepoints() \
429 (the_target->supports_tracepoints \
430 ? (*the_target->supports_tracepoints) () : 0)
431
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432#define target_supports_fast_tracepoints() \
433 (the_target->install_fast_tracepoint_jump_pad != NULL)
434
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435#define target_get_min_fast_tracepoint_insn_len() \
436 (the_target->get_min_fast_tracepoint_insn_len \
437 ? (*the_target->get_min_fast_tracepoint_insn_len) () : 0)
438
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439#define thread_stopped(thread) \
440 (*the_target->thread_stopped) (thread)
441
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442#define pause_all(freeze) \
443 do \
444 { \
445 if (the_target->pause_all) \
446 (*the_target->pause_all) (freeze); \
447 } while (0)
448
449#define unpause_all(unfreeze) \
450 do \
451 { \
452 if (the_target->unpause_all) \
453 (*the_target->unpause_all) (unfreeze); \
454 } while (0)
455
456#define cancel_breakpoints() \
457 do \
458 { \
459 if (the_target->cancel_breakpoints) \
460 (*the_target->cancel_breakpoints) (); \
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461 } while (0)
462
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463#define stabilize_threads() \
464 do \
465 { \
466 if (the_target->stabilize_threads) \
467 (*the_target->stabilize_threads) (); \
468 } while (0)
469
470#define install_fast_tracepoint_jump_pad(tpoint, tpaddr, \
471 collector, lockaddr, \
472 orig_size, \
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473 jump_entry, \
474 trampoline, trampoline_size, \
475 jjump_pad_insn, \
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476 jjump_pad_insn_size, \
477 adjusted_insn_addr, \
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478 adjusted_insn_addr_end, \
479 err) \
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480 (*the_target->install_fast_tracepoint_jump_pad) (tpoint, tpaddr, \
481 collector,lockaddr, \
482 orig_size, jump_entry, \
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483 trampoline, \
484 trampoline_size, \
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485 jjump_pad_insn, \
486 jjump_pad_insn_size, \
487 adjusted_insn_addr, \
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488 adjusted_insn_addr_end, \
489 err)
fa593d66 490
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491#define target_emit_ops() \
492 (the_target->emit_ops ? (*the_target->emit_ops) () : NULL)
493
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494#define target_supports_disable_randomization() \
495 (the_target->supports_disable_randomization ? \
496 (*the_target->supports_disable_randomization) () : 0)
497
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498#define target_supports_agent() \
499 (the_target->supports_agent ? \
500 (*the_target->supports_agent) () : 0)
501
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502#define target_supports_btrace() \
503 (the_target->supports_btrace \
504 ? (*the_target->supports_btrace) (the_target) : 0)
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505
506#define target_enable_btrace(ptid) \
507 (*the_target->enable_btrace) (ptid)
508
509#define target_disable_btrace(tinfo) \
510 (*the_target->disable_btrace) (tinfo)
511
512#define target_read_btrace(tinfo, buffer, type) \
513 (*the_target->read_btrace) (tinfo, buffer, type)
514
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515#define target_supports_range_stepping() \
516 (the_target->supports_range_stepping ? \
517 (*the_target->supports_range_stepping) () : 0)
518
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519/* Start non-stop mode, returns 0 on success, -1 on failure. */
520
521int start_non_stop (int nonstop);
522
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523ptid_t mywait (ptid_t ptid, struct target_waitstatus *ourstatus, int options,
524 int connected_wait);
0d62e5e8 525
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526#define prepare_to_access_memory() \
527 (the_target->prepare_to_access_memory \
528 ? (*the_target->prepare_to_access_memory) () \
529 : 0)
530
0146f85b 531#define done_accessing_memory() \
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532 do \
533 { \
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534 if (the_target->done_accessing_memory) \
535 (*the_target->done_accessing_memory) (); \
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536 } while (0)
537
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538#define target_core_of_thread(ptid) \
539 (the_target->core_of_thread ? (*the_target->core_of_thread) (ptid) \
540 : -1)
541
f450004a 542int read_inferior_memory (CORE_ADDR memaddr, unsigned char *myaddr, int len);
ce3a066d 543
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544int write_inferior_memory (CORE_ADDR memaddr, const unsigned char *myaddr,
545 int len);
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546
547void set_desired_inferior (int id);
ce3a066d 548
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549const char *target_pid_to_str (ptid_t);
550
ce3a066d 551#endif /* TARGET_H */
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