PR 9992
[deliverable/binutils-gdb.git] / gdb / gdbthread.h
CommitLineData
c906108c 1/* Multi-process/thread control defs for GDB, the GNU debugger.
197e01b6 2 Copyright (C) 1987, 1988, 1989, 1990, 1991, 1992, 1993, 1997, 1998, 1999,
0fb0cc75 3 2000, 2007, 2008, 2009 Free Software Foundation, Inc.
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4 Contributed by Lynx Real-Time Systems, Inc. Los Gatos, CA.
5
c906108c 6
c5aa993b 7 This file is part of GDB.
c906108c 8
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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
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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/>. */
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21
22#ifndef GDBTHREAD_H
23#define GDBTHREAD_H
24
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25struct symtab;
26
c906108c 27#include "breakpoint.h"
aa0cd9c1 28#include "frame.h"
8e8901c5 29#include "ui-out.h"
a474d7c2 30#include "inferior.h"
8e8901c5 31
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32struct thread_info
33{
34 struct thread_info *next;
39f77062 35 ptid_t ptid; /* "Actual process id";
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36 In fact, this may be overloaded with
37 kernel thread id, etc. */
38 int num; /* Convenient handle (GDB thread id) */
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39
40 /* Non-zero means the thread is executing. Note: this is different
41 from saying that there is an active target and we are stopped at
42 a breakpoint, for instance. This is a real indicator whether the
43 thread is off and running. */
44 /* This field is internal to thread.c. Never access it directly,
45 use is_executing instead. */
46 int executing_;
47
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48 /* Frontend view of the thread state. Note that the RUNNING/STOPPED
49 states are different from EXECUTING. When the thread is stopped
50 internally while handling an internal event, like a software
51 single-step breakpoint, EXECUTING will be false, but running will
52 still be true. As a possible future extension, this could turn
53 into enum { stopped, exited, stepping, finishing, until(ling),
54 running ... } */
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55 /* This field is internal to thread.c. Never access it directly,
56 use is_running instead. */
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57 int state_;
58
59 /* If this is > 0, then it means there's code out there that relies
60 on this thread being listed. Don't delete it from the lists even
61 if we detect it exiting. */
62 int refcount;
8ea051c5 63
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64 /* User/external stepping state. */
65
66 /* Step-resume or longjmp-resume breakpoint. */
0d06e24b 67 struct breakpoint *step_resume_breakpoint;
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68
69 /* Range to single step within.
70
71 If this is nonzero, respond to a single-step signal by continuing
72 to step if the pc is in this range.
73
74 If step_range_start and step_range_end are both 1, it means to
75 step for a single instruction (FIXME: it might clean up
76 wait_for_inferior in a minor way if this were changed to the
77 address of the instruction and that address plus one. But maybe
78 not.). */
79 CORE_ADDR step_range_start; /* Inclusive */
80 CORE_ADDR step_range_end; /* Exclusive */
81
82 /* Stack frame address as of when stepping command was issued.
83 This is how we know when we step into a subroutine call, and how
84 to set the frame for the breakpoint used to step out. */
aa0cd9c1 85 struct frame_id step_frame_id;
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86 int current_line;
87 struct symtab *current_symtab;
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88
89 /* Internal stepping state. */
90
91 /* Record the pc of the thread the last time it stopped. This is
92 maintained by proceed and keep_going, and used in
93 adjust_pc_after_break to distinguish a hardware single-step
94 SIGTRAP from a breakpoint SIGTRAP. */
95 CORE_ADDR prev_pc;
96
97 /* Nonzero if we are presently stepping over a breakpoint.
98
99 If we hit a breakpoint or watchpoint, and then continue, we need
100 to single step the current thread with breakpoints disabled, to
101 avoid hitting the same breakpoint or watchpoint again. And we
102 should step just a single thread and keep other threads stopped,
103 so that other threads don't miss breakpoints while they are
104 removed.
105
106 So, this variable simultaneously means that we need to single
107 step the current thread, keep other threads stopped, and that
108 breakpoints should be removed while we step.
109
110 This variable is set either:
111 - in proceed, when we resume inferior on user's explicit request
112 - in keep_going, if handle_inferior_event decides we need to
113 step over breakpoint.
114
115 The variable is cleared in normal_stop. The proceed calls
116 wait_for_inferior, which calls handle_inferior_event in a loop,
117 and until wait_for_inferior exits, this variable is changed only
118 by keep_going. */
0d06e24b 119 int trap_expected;
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120
121 /* Should we step over breakpoint next time keep_going is called? */
ca67fcb8 122 int stepping_over_breakpoint;
0d06e24b 123
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124 /* Set to TRUE if we should finish single-stepping over a breakpoint
125 after hitting the current step-resume breakpoint. */
126 int step_after_step_resume_breakpoint;
127
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128 /* This is set TRUE when a catchpoint of a shared library event
129 triggers. Since we don't wish to leave the inferior in the
130 solib hook when we report the event, we step the inferior
131 back to user code before stopping and reporting the event. */
132 int stepping_through_solib_after_catch;
133
134 /* When stepping_through_solib_after_catch is TRUE, this is a
135 list of the catchpoints that should be reported as triggering
136 when we finally do stop stepping. */
137 bpstat stepping_through_solib_catchpoints;
138
a474d7c2 139 /* Per-thread command support. */
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140
141 /* Pointer to what is left to do for an execution command after the
142 target stops. Used only in asynchronous mode, by targets that
143 support async execution. Several execution commands use it. */
a474d7c2 144 struct continuation *continuations;
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145
146 /* Similar to the above, but used when a single execution command
147 requires several resume/stop iterations. Used by the step
148 command. */
a474d7c2 149 struct continuation *intermediate_continuations;
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150
151 /* Nonzero if the thread is being proceeded for a "finish" command
152 or a similar situation when stop_registers should be saved. */
a474d7c2 153 int proceed_to_finish;
32400beb 154
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155 /* Nonzero if the thread is being proceeded for an inferior function
156 call. */
157 int in_infcall;
158
a474d7c2 159 enum step_over_calls_kind step_over_calls;
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160
161 /* Nonzero if stopped due to a step command. */
a474d7c2 162 int stop_step;
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163
164 /* If stepping, nonzero means step count is > 1 so don't print frame
165 next time inferior stops if it stops due to stepping. */
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166 int step_multi;
167
2020b7ab 168 /* Last signal that the inferior received (why it stopped). */
a474d7c2 169 enum target_signal stop_signal;
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170
171 /* Chain containing status of breakpoint(s) the thread stopped
172 at. */
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173 bpstat stop_bpstat;
174
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175 /* True if this thread has been explicitly requested to stop. */
176 int stop_requested;
177
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178 /* Private data used by the target vector implementation. */
179 struct private_thread_info *private;
180};
181
182/* Create an empty thread list, or empty the existing one. */
183extern void init_thread_list (void);
184
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185/* Add a thread to the thread list, print a message
186 that a new thread is found, and return the pointer to
187 the new thread. Caller my use this pointer to
188 initialize the private thread data. */
39f77062 189extern struct thread_info *add_thread (ptid_t ptid);
0d06e24b 190
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191/* Same as add_thread, but does not print a message
192 about new thread. */
193extern struct thread_info *add_thread_silent (ptid_t ptid);
194
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195/* Same as add_thread, and sets the private info. */
196extern struct thread_info *add_thread_with_info (ptid_t ptid,
197 struct private_thread_info *);
198
0d06e24b 199/* Delete an existing thread list entry. */
39f77062 200extern void delete_thread (ptid_t);
0d06e24b 201
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202/* Delete an existing thread list entry, and be quiet about it. Used
203 after the process this thread having belonged to having already
204 exited, for example. */
205extern void delete_thread_silent (ptid_t);
206
8601f500 207/* Delete a step_resume_breakpoint from the thread database. */
4e1c45ea 208extern void delete_step_resume_breakpoint (struct thread_info *);
8601f500 209
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210/* Translate the integer thread id (GDB's homegrown id, not the system's)
211 into a "pid" (which may be overloaded with extra thread information). */
39f77062 212extern ptid_t thread_id_to_pid (int);
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213
214/* Translate a 'pid' (which may be overloaded with extra thread information)
215 into the integer thread id (GDB's homegrown id, not the system's). */
39f77062 216extern int pid_to_thread_id (ptid_t ptid);
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217
218/* Boolean test for an already-known pid (which may be overloaded with
219 extra thread information). */
39f77062 220extern int in_thread_list (ptid_t ptid);
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221
222/* Boolean test for an already-known thread id (GDB's homegrown id,
223 not the system's). */
224extern int valid_thread_id (int thread);
225
226/* Search function to lookup a thread by 'pid'. */
39f77062 227extern struct thread_info *find_thread_pid (ptid_t ptid);
0d06e24b 228
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229/* Find thread by GDB user-visible thread number. */
230struct thread_info *find_thread_id (int num);
231
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232/* Change the ptid of thread OLD_PTID to NEW_PTID. */
233void thread_change_ptid (ptid_t old_ptid, ptid_t new_ptid);
234
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235/* Iterator function to call a user-provided callback function
236 once for each known thread. */
237typedef int (*thread_callback_func) (struct thread_info *, void *);
238extern struct thread_info *iterate_over_threads (thread_callback_func, void *);
239
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240extern int thread_count (void);
241
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242/* Switch from one thread to another. */
243extern void switch_to_thread (ptid_t ptid);
244
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245/* Marks thread PTID is running, or stopped.
246 If PIDGET (PTID) is -1, marks all threads. */
247extern void set_running (ptid_t ptid, int running);
248
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249/* Marks or clears thread(s) PTID as having been requested to stop.
250 If PTID is MINUS_ONE_PTID, applies to all threads. If
251 ptid_is_pid(PTID) is true, applies to all threads of the process
252 pointed at by PTID. If STOP, then the THREAD_STOP_REQUESTED
253 observer is called with PTID as argument. */
254extern void set_stop_requested (ptid_t ptid, int stop);
255
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256/* NOTE: Since the thread state is not a boolean, most times, you do
257 not want to check it with negation. If you really want to check if
258 the thread is stopped,
e1ac3328 259
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260 use (good):
261
262 if (is_stopped (ptid))
263
264 instead of (bad):
265
266 if (!is_running (ptid))
267
268 The latter also returns true on exited threads, most likelly not
269 what you want. */
270
271/* Reports if in the frontend's perpective, thread PTID is running. */
272extern int is_running (ptid_t ptid);
8ea051c5 273
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274/* Is this thread listed, but known to have exited? We keep it listed
275 (but not visible) until it's safe to delete. */
276extern int is_exited (ptid_t ptid);
277
0d6431e2 278/* In the frontend's perpective, is this thread stopped? */
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279extern int is_stopped (ptid_t ptid);
280
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281/* In the frontend's perpective is there any thread running? */
282extern int any_running (void);
283
284/* Marks thread PTID as executing, or not. If PIDGET (PTID) is -1,
285 marks all threads.
286
287 Note that this is different from the running state. See the
288 description of state_ and executing_ fields of struct
289 thread_info. */
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290extern void set_executing (ptid_t ptid, int executing);
291
292/* Reports if thread PTID is executing. */
293extern int is_executing (ptid_t ptid);
294
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295/* Merge the executing property of thread PTID over to its thread
296 state property (frontend running/stopped view).
297
298 "not executing" -> "stopped"
299 "executing" -> "running"
300 "exited" -> "exited"
301
302 If PIDGET (PTID) is -1, go over all threads.
303
304 Notifications are only emitted if the thread state did change. */
305extern void finish_thread_state (ptid_t ptid);
306
307/* Same as FINISH_THREAD_STATE, but with an interface suitable to be
308 registered as a cleanup. PTID_P points to the ptid_t that is
309 passed to FINISH_THREAD_STATE. */
310extern void finish_thread_state_cleanup (void *ptid_p);
311
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312/* Commands with a prefix of `thread'. */
313extern struct cmd_list_element *thread_cmd_list;
314
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315/* Print notices on thread events (attach, detach, etc.), set with
316 `set print thread-events'. */
317extern int print_thread_events;
318
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319extern void print_thread_info (struct ui_out *uiout, int thread,
320 int pid);
8e8901c5 321
4f8d22e3 322extern struct cleanup *make_cleanup_restore_current_thread (void);
6208b47d 323
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324/* Returns a pointer into the thread_info corresponding to
325 INFERIOR_PTID. INFERIOR_PTID *must* be in the thread list. */
326extern struct thread_info* inferior_thread (void);
6208b47d 327
c5aa993b 328#endif /* GDBTHREAD_H */
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