* configure.in: Allow mingw32 and cygwin targets to build cross-gdb.
[deliverable/binutils-gdb.git] / gdb / gdbserver / target.h
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ce3a066d 1/* Target operations for the remote server for GDB.
6f0f660e 2 Copyright (C) 2002, 2003, 2004, 2005
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3 Free Software Foundation, Inc.
4
5 Contributed by MontaVista Software.
6
7 This file is part of GDB.
8
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
11 the Free Software Foundation; either version 2 of the License, or
12 (at your option) any later version.
13
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.
18
19 You should have received a copy of the GNU General Public License
20 along with this program; if not, write to the Free Software
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21 Foundation, Inc., 51 Franklin Street, Fifth Floor,
22 Boston, MA 02110-1301, USA. */
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23
24#ifndef TARGET_H
25#define TARGET_H
26
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27/* This structure describes how to resume a particular thread (or
28 all threads) based on the client's request. If thread is -1, then
29 this entry applies to all threads. These are generally passed around
30 as an array, and terminated by a thread == -1 entry. */
31
32struct thread_resume
33{
a1928bad 34 unsigned long thread;
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35
36 /* If non-zero, leave this thread stopped. */
37 int leave_stopped;
38
39 /* If non-zero, we want to single-step. */
40 int step;
41
42 /* If non-zero, send this signal when we resume. */
43 int sig;
44};
45
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46struct target_ops
47{
48 /* Start a new process.
49
50 PROGRAM is a path to the program to execute.
51 ARGS is a standard NULL-terminated array of arguments,
52 to be passed to the inferior as ``argv''.
53
a9fa9f7d 54 Returns the new PID on success, -1 on failure. Registers the new
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55 process with the process list. */
56
57 int (*create_inferior) (char *program, char **args);
58
59 /* Attach to a running process.
60
61 PID is the process ID to attach to, specified by the user
62 or a higher layer. */
63
a1928bad 64 int (*attach) (unsigned long pid);
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65
66 /* Kill all inferiors. */
67
68 void (*kill) (void);
69
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70 /* Detach from all inferiors. */
71
72 void (*detach) (void);
73
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74 /* Return 1 iff the thread with process ID PID is alive. */
75
a1928bad 76 int (*thread_alive) (unsigned long pid);
ce3a066d 77
64386c31 78 /* Resume the inferior process. */
ce3a066d 79
64386c31 80 void (*resume) (struct thread_resume *resume_info);
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81
82 /* Wait for the inferior process to change state.
83
84 STATUSP will be filled in with a response code to send to GDB.
85
86 Returns the signal which caused the process to stop. */
87
88 unsigned char (*wait) (char *status);
89
90 /* Fetch registers from the inferior process.
91
92 If REGNO is -1, fetch all registers; otherwise, fetch at least REGNO. */
93
94 void (*fetch_registers) (int regno);
aa691b87 95
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96 /* Store registers to the inferior process.
97
98 If REGNO is -1, store all registers; otherwise, store at least REGNO. */
99
100 void (*store_registers) (int regno);
101
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102 /* Read memory from the inferior process. This should generally be
103 called through read_inferior_memory, which handles breakpoint shadowing.
ce3a066d 104
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105 Read LEN bytes at MEMADDR into a buffer at MYADDR.
106
107 Returns 0 on success and errno on failure. */
ce3a066d 108
f450004a 109 int (*read_memory) (CORE_ADDR memaddr, unsigned char *myaddr, int len);
ce3a066d 110
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111 /* Write memory to the inferior process. This should generally be
112 called through write_inferior_memory, which handles breakpoint shadowing.
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113
114 Write LEN bytes from the buffer at MYADDR to MEMADDR.
115
116 Returns 0 on success and errno on failure. */
117
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118 int (*write_memory) (CORE_ADDR memaddr, const unsigned char *myaddr,
119 int len);
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120
121 /* Query GDB for the values of any symbols we're interested in.
122 This function is called whenever we receive a "qSymbols::"
123 query, which corresponds to every time more symbols (might)
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124 become available. NULL if we aren't interested in any
125 symbols. */
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126
127 void (*look_up_symbols) (void);
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128
129 /* Send a signal to the inferior process, however is appropriate. */
130 void (*send_signal) (int);
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131
132 /* Read auxiliary vector data from the inferior process.
133
134 Read LEN bytes at OFFSET into a buffer at MYADDR. */
135
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136 int (*read_auxv) (CORE_ADDR offset, unsigned char *myaddr,
137 unsigned int len);
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138
139 /* Insert and remove a hardware watchpoint.
140 Returns 0 on success, -1 on failure and 1 on unsupported.
141 The type is coded as follows:
142 2 = write watchpoint
143 3 = read watchpoint
144 4 = access watchpoint
145 */
146
147 int (*insert_watchpoint) (char type, CORE_ADDR addr, int len);
148 int (*remove_watchpoint) (char type, CORE_ADDR addr, int len);
149
150 /* Returns 1 if target was stopped due to a watchpoint hit, 0 otherwise. */
151
152 int (*stopped_by_watchpoint) (void);
153
154 /* Returns the address associated with the watchpoint that hit, if any;
155 returns 0 otherwise. */
156
157 CORE_ADDR (*stopped_data_address) (void);
158
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159 /* Reports the text, data offsets of the executable. This is
160 needed for uclinux where the executable is relocated during load
161 time. */
162
163 int (*read_offsets) (CORE_ADDR *text, CORE_ADDR *data);
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164};
165
166extern struct target_ops *the_target;
167
168void set_target_ops (struct target_ops *);
169
170#define create_inferior(program, args) \
171 (*the_target->create_inferior) (program, args)
172
173#define myattach(pid) \
174 (*the_target->attach) (pid)
175
176#define kill_inferior() \
177 (*the_target->kill) ()
178
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179#define detach_inferior() \
180 (*the_target->detach) ()
181
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182#define mythread_alive(pid) \
183 (*the_target->thread_alive) (pid)
184
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185#define fetch_inferior_registers(regno) \
186 (*the_target->fetch_registers) (regno)
187
188#define store_inferior_registers(regno) \
189 (*the_target->store_registers) (regno)
190
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191unsigned char mywait (char *statusp, int connected_wait);
192
f450004a 193int read_inferior_memory (CORE_ADDR memaddr, unsigned char *myaddr, int len);
ce3a066d 194
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195int write_inferior_memory (CORE_ADDR memaddr, const unsigned char *myaddr,
196 int len);
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197
198void set_desired_inferior (int id);
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199
200#endif /* TARGET_H */
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