some comments from Dominic
[openocd.git] / src / target / target.h
1 /***************************************************************************
2 * Copyright (C) 2005 by Dominic Rath *
3 * Dominic.Rath@gmx.de *
4 * *
5 * This program is free software; you can redistribute it and/or modify *
6 * it under the terms of the GNU General Public License as published by *
7 * the Free Software Foundation; either version 2 of the License, or *
8 * (at your option) any later version. *
9 * *
10 * This program is distributed in the hope that it will be useful, *
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of *
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
13 * GNU General Public License for more details. *
14 * *
15 * You should have received a copy of the GNU General Public License *
16 * along with this program; if not, write to the *
17 * Free Software Foundation, Inc., *
18 * 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. *
19 ***************************************************************************/
20 #ifndef TARGET_H
21 #define TARGET_H
22
23 #include "register.h"
24 #include "breakpoints.h"
25 #include "algorithm.h"
26 #include "trace.h"
27
28 #include "command.h"
29 #include "types.h"
30
31 #include <sys/time.h>
32 #include <time.h>
33
34 struct reg_s;
35 struct command_context_s;
36 /*
37 TARGET_UNKNOWN = 0: we don't know anything about the target yet
38 TARGET_RUNNING = 1: the target is executing user code
39 TARGET_HALTED = 2: the target is not executing code, and ready to talk to the
40 debugger. on an xscale it means that the debug handler is executing
41 TARGET_RESET = 3: the target is being held in reset (only a temporary state,
42 not sure how this is used with all the recent changes)
43 TARGET_DEBUG_RUNNING = 4: the target is running, but it is executing code on
44 behalf of the debugger (e.g. algorithm for flashing)
45 */
46 enum target_state
47 {
48 TARGET_UNKNOWN = 0,
49 TARGET_RUNNING = 1,
50 TARGET_HALTED = 2,
51 TARGET_RESET = 3,
52 TARGET_DEBUG_RUNNING = 4,
53 };
54
55 extern char *target_state_strings[];
56
57 enum daemon_startup_mode
58 {
59 DAEMON_ATTACH, /* simply attach to the target */
60 DAEMON_RESET, /* reset target (behaviour defined by reset_mode */
61 };
62
63 extern enum daemon_startup_mode startup_mode;
64
65 enum target_reset_mode
66 {
67 RESET_RUN = 0, /* reset and let target run */
68 RESET_HALT = 1, /* reset and halt target out of reset */
69 RESET_INIT = 2, /* reset and halt target out of reset, then run init script */
70 RESET_RUN_AND_HALT = 3, /* reset and let target run, halt after n milliseconds */
71 RESET_RUN_AND_INIT = 4, /* reset and let target run, halt after n milliseconds, then run init script */
72 };
73
74 enum target_debug_reason
75 {
76 DBG_REASON_DBGRQ = 0,
77 DBG_REASON_BREAKPOINT = 1,
78 DBG_REASON_WATCHPOINT = 2,
79 DBG_REASON_WPTANDBKPT = 3,
80 DBG_REASON_SINGLESTEP = 4,
81 DBG_REASON_NOTHALTED = 5
82 };
83
84 extern char *target_debug_reason_strings[];
85
86 enum target_endianess
87 {
88 TARGET_BIG_ENDIAN = 0, TARGET_LITTLE_ENDIAN = 1
89 };
90
91 extern char *target_endianess_strings[];
92
93 struct target_s;
94
95 typedef struct working_area_s
96 {
97 u32 address;
98 u32 size;
99 int free;
100 u8 *backup;
101 struct working_area_s **user;
102 struct working_area_s *next;
103 } working_area_t;
104
105 typedef struct target_type_s
106 {
107 char *name;
108
109 /* poll current target status */
110 int (*poll)(struct target_s *target);
111 /* Invoked only from target_arch_state().
112 * Issue USER() w/architecture specific status. */
113 int (*arch_state)(struct target_s *target);
114
115 /* target request support */
116 int (*target_request_data)(struct target_s *target, u32 size, u8 *buffer);
117
118 /* target execution control */
119 int (*halt)(struct target_s *target);
120 int (*resume)(struct target_s *target, int current, u32 address, int handle_breakpoints, int debug_execution);
121 int (*step)(struct target_s *target, int current, u32 address, int handle_breakpoints);
122
123 /* target reset control */
124 int (*assert_reset)(struct target_s *target);
125 int (*deassert_reset)(struct target_s *target);
126 int (*soft_reset_halt)(struct target_s *target);
127 int (*prepare_reset_halt)(struct target_s *target);
128
129 /* target register access for gdb */
130 int (*get_gdb_reg_list)(struct target_s *target, struct reg_s **reg_list[], int *reg_list_size);
131
132 /* target memory access
133 * size: 1 = byte (8bit), 2 = half-word (16bit), 4 = word (32bit)
134 * count: number of items of <size>
135 */
136 int (*read_memory)(struct target_s *target, u32 address, u32 size, u32 count, u8 *buffer);
137 int (*write_memory)(struct target_s *target, u32 address, u32 size, u32 count, u8 *buffer);
138
139 /* write target memory in multiples of 4 byte, optimized for writing large quantities of data */
140 int (*bulk_write_memory)(struct target_s *target, u32 address, u32 count, u8 *buffer);
141
142 int (*checksum_memory)(struct target_s *target, u32 address, u32 count, u32* checksum);
143
144 /* target break-/watchpoint control
145 * rw: 0 = write, 1 = read, 2 = access
146 */
147 int (*add_breakpoint)(struct target_s *target, breakpoint_t *breakpoint);
148 int (*remove_breakpoint)(struct target_s *target, breakpoint_t *breakpoint);
149 int (*add_watchpoint)(struct target_s *target, watchpoint_t *watchpoint);
150 int (*remove_watchpoint)(struct target_s *target, watchpoint_t *watchpoint);
151
152 /* target algorithm support */
153 int (*run_algorithm)(struct target_s *target, int num_mem_params, mem_param_t *mem_params, int num_reg_params, reg_param_t *reg_param, u32 entry_point, u32 exit_point, int timeout_ms, void *arch_info);
154
155 int (*register_commands)(struct command_context_s *cmd_ctx);
156 int (*target_command)(struct command_context_s *cmd_ctx, char *cmd, char **args, int argc, struct target_s *target);
157 int (*init_target)(struct command_context_s *cmd_ctx, struct target_s *target);
158 int (*quit)(void);
159
160 int (*virt2phys)(struct target_s *target, u32 address, u32 *physical);
161 int (*mmu)(struct target_s *target, int *enabled);
162
163 } target_type_t;
164
165 typedef struct target_s
166 {
167 target_type_t *type; /* target type definition (name, access functions) */
168 enum target_reset_mode reset_mode; /* what to do after a reset */
169 int run_and_halt_time; /* how long the target should run after a run_and_halt reset */
170 char *reset_script; /* script file to initialize the target after a reset */
171 char *post_halt_script; /* script file to execute after the target halted */
172 char *pre_resume_script; /* script file to execute before the target resumed */
173 char *gdb_program_script; /* script file to execute before programming vis gdb */
174 u32 working_area; /* working area (initialized RAM). Evaluated
175 upon first allocation from virtual/physical address.
176 */
177 u32 working_area_virt; /* virtual address */
178 u32 working_area_phys; /* physical address */
179 u32 working_area_size; /* size in bytes */
180 u32 backup_working_area; /* whether the content of the working area has to be preserved */
181 struct working_area_s *working_areas;/* list of allocated working areas */
182 enum target_debug_reason debug_reason;/* reason why the target entered debug state */
183 enum target_endianess endianness; /* target endianess */
184 enum target_state state; /* the current backend-state (running, halted, ...) */
185 struct reg_cache_s *reg_cache; /* the first register cache of the target (core regs) */
186 struct breakpoint_s *breakpoints; /* list of breakpoints */
187 struct watchpoint_s *watchpoints; /* list of watchpoints */
188 struct trace_s *trace_info; /* generic trace information */
189 struct debug_msg_receiver_s *dbgmsg;/* list of debug message receivers */
190 u32 dbg_msg_enabled; /* debug message status */
191 void *arch_info; /* architecture specific information */
192 struct target_s *next; /* next target in list */
193 } target_t;
194
195 enum target_event
196 {
197 TARGET_EVENT_HALTED, /* target entered debug state from normal execution or reset */
198 TARGET_EVENT_RESUMED, /* target resumed to normal execution */
199 TARGET_EVENT_RESET, /* target entered reset */
200 TARGET_EVENT_DEBUG_HALTED, /* target entered debug state, but was executing on behalf of the debugger */
201 TARGET_EVENT_DEBUG_RESUMED, /* target resumed to execute on behalf of the debugger */
202 TARGET_EVENT_GDB_PROGRAM /* target about to be be programmed by gdb */
203 };
204
205 typedef struct target_event_callback_s
206 {
207 int (*callback)(struct target_s *target, enum target_event event, void *priv);
208 void *priv;
209 struct target_event_callback_s *next;
210 } target_event_callback_t;
211
212 typedef struct target_timer_callback_s
213 {
214 int (*callback)(void *priv);
215 int time_ms;
216 int periodic;
217 struct timeval when;
218 void *priv;
219 struct target_timer_callback_s *next;
220 } target_timer_callback_t;
221
222 extern int target_register_commands(struct command_context_s *cmd_ctx);
223 extern int target_register_user_commands(struct command_context_s *cmd_ctx);
224 extern int target_init(struct command_context_s *cmd_ctx);
225 extern int target_init_reset(struct command_context_s *cmd_ctx);
226 extern int handle_target(void *priv);
227 extern int target_process_reset(struct command_context_s *cmd_ctx);
228
229 extern int target_register_event_callback(int (*callback)(struct target_s *target, enum target_event event, void *priv), void *priv);
230 extern int target_unregister_event_callback(int (*callback)(struct target_s *target, enum target_event event, void *priv), void *priv);
231 extern int target_call_event_callbacks(target_t *target, enum target_event event);
232
233 extern int target_register_timer_callback(int (*callback)(void *priv), int time_ms, int periodic, void *priv);
234 extern int target_unregister_timer_callback(int (*callback)(void *priv), void *priv);
235 extern int target_call_timer_callbacks();
236
237 extern target_t* get_current_target(struct command_context_s *cmd_ctx);
238 extern int get_num_by_target(target_t *query_target);
239 extern target_t* get_target_by_num(int num);
240
241 extern int target_write_buffer(struct target_s *target, u32 address, u32 size, u8 *buffer);
242 extern int target_read_buffer(struct target_s *target, u32 address, u32 size, u8 *buffer);
243 extern int target_checksum_memory(struct target_s *target, u32 address, u32 size, u32* crc);
244
245 extern int target_alloc_working_area(struct target_s *target, u32 size, working_area_t **area);
246 extern int target_free_working_area(struct target_s *target, working_area_t *area);
247 extern int target_free_all_working_areas(struct target_s *target);
248
249 extern target_t *targets;
250
251 extern target_event_callback_t *target_event_callbacks;
252 extern target_timer_callback_t *target_timer_callbacks;
253
254 extern u32 target_buffer_get_u32(target_t *target, u8 *buffer);
255 extern u16 target_buffer_get_u16(target_t *target, u8 *buffer);
256 extern void target_buffer_set_u32(target_t *target, u8 *buffer, u32 value);
257 extern void target_buffer_set_u16(target_t *target, u8 *buffer, u16 value);
258
259 int target_read_u32(struct target_s *target, u32 address, u32 *value);
260 int target_read_u16(struct target_s *target, u32 address, u16 *value);
261 int target_read_u8(struct target_s *target, u32 address, u8 *value);
262 int target_write_u32(struct target_s *target, u32 address, u32 value);
263 int target_write_u16(struct target_s *target, u32 address, u16 value);
264 int target_write_u8(struct target_s *target, u32 address, u8 value);
265
266 /* Issues USER() statements with target state information */
267 int target_arch_state(struct target_s *target);
268
269 #define ERROR_TARGET_INVALID (-300)
270 #define ERROR_TARGET_INIT_FAILED (-301)
271 #define ERROR_TARGET_TIMEOUT (-302)
272 #define ERROR_TARGET_ALREADY_HALTED (-303)
273 #define ERROR_TARGET_NOT_HALTED (-304)
274 #define ERROR_TARGET_FAILURE (-305)
275 #define ERROR_TARGET_UNALIGNED_ACCESS (-306)
276 #define ERROR_TARGET_DATA_ABORT (-307)
277 #define ERROR_TARGET_RESOURCE_NOT_AVAILABLE (-308)
278 #define ERROR_TARGET_TRANSLATION_FAULT (-309)
279
280 #endif /* TARGET_H */

Linking to existing account procedure

If you already have an account and want to add another login method you MUST first sign in with your existing account and then change URL to read https://review.openocd.org/login/?link to get to this page again but this time it'll work for linking. Thank you.

SSH host keys fingerprints

1024 SHA256:YKx8b7u5ZWdcbp7/4AeXNaqElP49m6QrwfXaqQGJAOk gerrit-code-review@openocd.zylin.com (DSA)
384 SHA256:jHIbSQa4REvwCFG4cq5LBlBLxmxSqelQPem/EXIrxjk gerrit-code-review@openocd.org (ECDSA)
521 SHA256:UAOPYkU9Fjtcao0Ul/Rrlnj/OsQvt+pgdYSZ4jOYdgs gerrit-code-review@openocd.org (ECDSA)
256 SHA256:A13M5QlnozFOvTllybRZH6vm7iSt0XLxbA48yfc2yfY gerrit-code-review@openocd.org (ECDSA)
256 SHA256:spYMBqEYoAOtK7yZBrcwE8ZpYt6b68Cfh9yEVetvbXg gerrit-code-review@openocd.org (ED25519)
+--[ED25519 256]--+
|=..              |
|+o..   .         |
|*.o   . .        |
|+B . . .         |
|Bo. = o S        |
|Oo.+ + =         |
|oB=.* = . o      |
| =+=.+   + E     |
|. .=o   . o      |
+----[SHA256]-----+
2048 SHA256:0Onrb7/PHjpo6iVZ7xQX2riKN83FJ3KGU0TvI0TaFG4 gerrit-code-review@openocd.zylin.com (RSA)