1 /***************************************************************************
2 * Copyright (C) 2005 by Dominic Rath *
3 * Dominic.Rath@gmx.de *
5 * Copyright (C) 2007,2008,2009 Øyvind Harboe *
6 * oyvind.harboe@zylin.com *
8 * Copyright (C) 2008 by Spencer Oliver *
9 * spen@spen-soft.co.uk *
11 * This program is free software; you can redistribute it and/or modify *
12 * it under the terms of the GNU General Public License as published by *
13 * the Free Software Foundation; either version 2 of the License, or *
14 * (at your option) any later version. *
16 * This program is distributed in the hope that it will be useful, *
17 * but WITHOUT ANY WARRANTY; without even the implied warranty of *
18 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
19 * GNU General Public License for more details. *
21 * You should have received a copy of the GNU General Public License *
22 * along with this program; if not, write to the *
23 * Free Software Foundation, Inc., *
24 * 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. *
25 ***************************************************************************/
34 struct command_context
;
42 * TARGET_UNKNOWN = 0: we don't know anything about the target yet
43 * TARGET_RUNNING = 1: the target is executing user code
44 * TARGET_HALTED = 2: the target is not executing code, and ready to talk to the
45 * debugger. on an xscale it means that the debug handler is executing
46 * TARGET_RESET = 3: the target is being held in reset (only a temporary state,
47 * not sure how this is used with all the recent changes)
48 * TARGET_DEBUG_RUNNING = 4: the target is running, but it is executing code on
49 * behalf of the debugger (e.g. algorithm for flashing)
51 * also see: target_state_name();
61 TARGET_DEBUG_RUNNING
= 4,
64 extern const Jim_Nvp nvp_target_state
[];
71 extern const Jim_Nvp nvp_assert
[];
73 enum target_reset_mode
76 RESET_RUN
= 1, /* reset and let target run */
77 RESET_HALT
= 2, /* reset and halt target out of reset */
78 RESET_INIT
= 3, /* reset and halt target out of reset, then run init script */
81 extern const Jim_Nvp nvp_reset_mode
[];
83 enum target_debug_reason
86 DBG_REASON_BREAKPOINT
= 1,
87 DBG_REASON_WATCHPOINT
= 2,
88 DBG_REASON_WPTANDBKPT
= 3,
89 DBG_REASON_SINGLESTEP
= 4,
90 DBG_REASON_NOTHALTED
= 5,
91 DBG_REASON_UNDEFINED
= 6
94 extern const Jim_Nvp nvp_target_debug_reason
[];
98 TARGET_ENDIAN_UNKNOWN
= 0,
99 TARGET_BIG_ENDIAN
= 1, TARGET_LITTLE_ENDIAN
= 2
102 extern const Jim_Nvp nvp_target_endian
[];
110 struct working_area
**user
;
111 struct working_area
*next
;
114 // target_type.h contains the full definitionof struct targe_type
117 struct target_type
*type
; /* target type definition (name, access functions) */
118 const char *cmd_name
; /* tcl Name of target */
119 int target_number
; /* DO NOT USE! field to be removed in 2010 */
120 struct jtag_tap
*tap
; /* where on the jtag chain is this */
121 const char *variant
; /* what variant of this chip is it? */
124 * Indicates whether this target has been examined.
126 * Do @b not access this field directly, use target_was_examined()
127 * or target_set_examined().
131 struct target_event_action
*event_action
;
133 int reset_halt
; /* attempt resetting the CPU into the halted mode? */
134 uint32_t working_area
; /* working area (initialized RAM). Evaluated
135 * upon first allocation from virtual/physical address. */
136 bool working_area_virt_spec
; /* virtual address specified? */
137 uint32_t working_area_virt
; /* virtual address */
138 bool working_area_phys_spec
; /* virtual address specified? */
139 uint32_t working_area_phys
; /* physical address */
140 uint32_t working_area_size
; /* size in bytes */
141 uint32_t backup_working_area
; /* whether the content of the working area has to be preserved */
142 struct working_area
*working_areas
;/* list of allocated working areas */
143 enum target_debug_reason debug_reason
;/* reason why the target entered debug state */
144 enum target_endianess endianness
; /* target endianess */
145 // also see: target_state_name()
146 enum target_state state
; /* the current backend-state (running, halted, ...) */
147 struct reg_cache
*reg_cache
; /* the first register cache of the target (core regs) */
148 struct breakpoint
*breakpoints
; /* list of breakpoints */
149 struct watchpoint
*watchpoints
; /* list of watchpoints */
150 struct trace
*trace_info
; /* generic trace information */
151 struct debug_msg_receiver
*dbgmsg
;/* list of debug message receivers */
152 uint32_t dbg_msg_enabled
; /* debug message status */
153 void *arch_info
; /* architecture specific information */
154 struct target
*next
; /* next target in list */
156 int display
; /* display async info in telnet session. Do not display
157 * lots of halted/resumed info when stepping in debugger. */
158 bool halt_issued
; /* did we transition to halted state? */
159 long long halt_issued_time
; /* Note time when halt was issued */
164 /* LD historical names
165 * - Prior to the great TCL change
166 * - June/July/Aug 2008
168 TARGET_EVENT_OLD_gdb_program_config
,
169 TARGET_EVENT_OLD_pre_reset
,
170 TARGET_EVENT_OLD_post_reset
,
171 TARGET_EVENT_OLD_pre_resume
,
173 /* allow GDB to do stuff before others handle the halted event,
174 * this is in lieu of defining ordering of invocation of events,
175 * which would be more complicated
177 * Telling GDB to halt does not mean that the target stopped running,
178 * simply that we're dropping out of GDB's waiting for step or continue.
180 * This can be useful when e.g. detecting power dropout.
182 TARGET_EVENT_GDB_HALT
,
183 TARGET_EVENT_HALTED
, /* target entered debug state from normal execution or reset */
184 TARGET_EVENT_RESUMED
, /* target resumed to normal execution */
185 TARGET_EVENT_RESUME_START
,
186 TARGET_EVENT_RESUME_END
,
188 TARGET_EVENT_GDB_START
, /* debugger started execution (step/run) */
189 TARGET_EVENT_GDB_END
, /* debugger stopped execution (step/run) */
191 TARGET_EVENT_RESET_START
,
192 TARGET_EVENT_RESET_ASSERT_PRE
,
193 TARGET_EVENT_RESET_ASSERT_POST
,
194 TARGET_EVENT_RESET_DEASSERT_PRE
,
195 TARGET_EVENT_RESET_DEASSERT_POST
,
196 TARGET_EVENT_RESET_HALT_PRE
,
197 TARGET_EVENT_RESET_HALT_POST
,
198 TARGET_EVENT_RESET_WAIT_PRE
,
199 TARGET_EVENT_RESET_WAIT_POST
,
200 TARGET_EVENT_RESET_INIT
,
201 TARGET_EVENT_RESET_END
,
203 TARGET_EVENT_DEBUG_HALTED
, /* target entered debug state, but was executing on behalf of the debugger */
204 TARGET_EVENT_DEBUG_RESUMED
, /* target resumed to execute on behalf of the debugger */
206 TARGET_EVENT_EXAMINE_START
,
207 TARGET_EVENT_EXAMINE_END
,
209 TARGET_EVENT_GDB_ATTACH
,
210 TARGET_EVENT_GDB_DETACH
,
212 TARGET_EVENT_GDB_FLASH_ERASE_START
,
213 TARGET_EVENT_GDB_FLASH_ERASE_END
,
214 TARGET_EVENT_GDB_FLASH_WRITE_START
,
215 TARGET_EVENT_GDB_FLASH_WRITE_END
,
218 struct target_event_action
{
219 enum target_event event
;
220 struct Jim_Obj
*body
;
222 struct target_event_action
*next
;
225 struct target_event_callback
227 int (*callback
)(struct target
*target
, enum target_event event
, void *priv
);
229 struct target_event_callback
*next
;
232 struct target_timer_callback
234 int (*callback
)(void *priv
);
239 struct target_timer_callback
*next
;
242 int target_register_commands(struct command_context
*cmd_ctx
);
243 int target_register_user_commands(struct command_context
*cmd_ctx
);
244 int target_init(struct command_context
*cmd_ctx
);
245 int target_examine(void);
246 int handle_target(void *priv
);
247 int target_process_reset(struct command_context
*cmd_ctx
,
248 enum target_reset_mode reset_mode
);
250 int target_register_event_callback(
251 int (*callback
)(struct target
*target
,
252 enum target_event event
, void *priv
),
254 int target_unregister_event_callback(
255 int (*callback
)(struct target
*target
,
256 enum target_event event
, void *priv
),
258 int target_poll(struct target
*target
);
259 int target_resume(struct target
*target
, int current
, uint32_t address
,
260 int handle_breakpoints
, int debug_execution
);
261 int target_halt(struct target
*target
);
262 int target_call_event_callbacks(struct target
*target
, enum target_event event
);
265 * The period is very approximate, the callback can happen much more often
266 * or much more rarely than specified
268 int target_register_timer_callback(int (*callback
)(void *priv
),
269 int time_ms
, int periodic
, void *priv
);
270 int target_unregister_timer_callback(int (*callback
)(void *priv
), void *priv
);
272 int target_call_timer_callbacks(void);
274 * Invoke this to ensure that e.g. polling timer callbacks happen before
275 * a syncrhonous command completes.
277 int target_call_timer_callbacks_now(void);
279 struct target
* get_current_target(struct command_context
*cmd_ctx
);
280 struct target
*get_target(const char *id
);
283 * Get the target name.
285 * This routine is a wrapper for the target->type->name field.
287 const char *target_get_name(struct target
*target
);
290 * Examine the specified @a target, letting it perform any
291 * initialization that requires JTAG access.
293 * This routine is a wrapper for target->type->examine.
295 int target_examine_one(struct target
*target
);
297 /// @returns @c true if target_set_examined() has been called.
298 static inline bool target_was_examined(struct target
*target
)
300 return target
->examined
;
303 /// Sets the @c examined flag for the given target.
304 /// Use in target->type->examine() after one-time setup is done.
305 static inline void target_set_examined(struct target
*target
)
307 target
->examined
= true;
311 * Add the @a breakpoint for @a target.
313 * This routine is a wrapper for target->type->add_breakpoint.
315 int target_add_breakpoint(struct target
*target
,
316 struct breakpoint
*breakpoint
);
318 * Remove the @a breakpoint for @a target.
320 * This routine is a wrapper for target->type->remove_breakpoint.
322 int target_remove_breakpoint(struct target
*target
,
323 struct breakpoint
*breakpoint
);
325 * Add the @a watchpoint for @a target.
327 * This routine is a wrapper for target->type->add_watchpoint.
329 int target_add_watchpoint(struct target
*target
,
330 struct watchpoint
*watchpoint
);
332 * Remove the @a watchpoint for @a target.
334 * This routine is a wrapper for target->type->remove_watchpoint.
336 int target_remove_watchpoint(struct target
*target
,
337 struct watchpoint
*watchpoint
);
340 * Obtain the registers for GDB.
342 * This routine is a wrapper for target->type->get_gdb_reg_list.
344 int target_get_gdb_reg_list(struct target
*target
,
345 struct reg
**reg_list
[], int *reg_list_size
);
350 * This routine is a wrapper for target->type->step.
352 int target_step(struct target
*target
,
353 int current
, uint32_t address
, int handle_breakpoints
);
355 * Run an algorithm on the @a target given.
357 * This routine is a wrapper for target->type->run_algorithm.
359 int target_run_algorithm(struct target
*target
,
360 int num_mem_params
, struct mem_param
*mem_params
,
361 int num_reg_params
, struct reg_param
*reg_param
,
362 uint32_t entry_point
, uint32_t exit_point
,
363 int timeout_ms
, void *arch_info
);
366 * Read @a count items of @a size bytes from the memory of @a target at
367 * the @a address given.
369 * This routine is a wrapper for target->type->read_memory.
371 int target_read_memory(struct target
*target
,
372 uint32_t address
, uint32_t size
, uint32_t count
, uint8_t *buffer
);
374 * Write @a count items of @a size bytes to the memory of @a target at
375 * the @a address given.
377 * This routine is wrapper for target->type->write_memory.
379 int target_write_memory(struct target
*target
,
380 uint32_t address
, uint32_t size
, uint32_t count
, uint8_t *buffer
);
383 * Write @a count items of 4 bytes to the memory of @a target at
384 * the @a address given. Because it operates only on whole words,
385 * this should be faster than target_write_memory().
387 * This routine is wrapper for target->type->bulk_write_memory.
389 int target_bulk_write_memory(struct target
*target
,
390 uint32_t address
, uint32_t count
, uint8_t *buffer
);
393 * Write to target memory using the virtual address.
395 * Note that this fn is used to implement software breakpoints. Targets
396 * can implement support for software breakpoints to memory marked as read
397 * only by making this fn write to ram even if it is read only(MMU or
400 * It is sufficient to implement for writing a single word(16 or 32 in
401 * ARM32/16 bit case) to write the breakpoint to ram.
403 * The target should also take care of "other things" to make sure that
404 * software breakpoints can be written using this function. E.g.
405 * when there is a separate instruction and data cache, this fn must
406 * make sure that the instruction cache is synced up to the potential
407 * code change that can happen as a result of the memory write(typically
408 * by invalidating the cache).
410 * The high level wrapper fn in target.c will break down this memory write
411 * request to multiple write requests to the target driver to e.g. guarantee
412 * that writing 4 bytes to an aligned address happens with a single 32 bit
413 * write operation, thus making this fn suitable to e.g. write to special
414 * peripheral registers which do not support byte operations.
416 int target_write_buffer(struct target
*target
,
417 uint32_t address
, uint32_t size
, uint8_t *buffer
);
418 int target_read_buffer(struct target
*target
,
419 uint32_t address
, uint32_t size
, uint8_t *buffer
);
420 int target_checksum_memory(struct target
*target
,
421 uint32_t address
, uint32_t size
, uint32_t* crc
);
422 int target_blank_check_memory(struct target
*target
,
423 uint32_t address
, uint32_t size
, uint32_t* blank
);
424 int target_wait_state(struct target
*target
, enum target_state state
, int ms
);
426 /** Return the *name* of this targets current state */
427 const char *target_state_name( struct target
*target
);
431 * if "area" passed in to target_alloc_working_area() points to a memory
432 * location that goes out of scope (e.g. a pointer on the stack), then
433 * the caller of target_alloc_working_area() is responsible for invoking
434 * target_free_working_area() before "area" goes out of scope.
436 * target_free_all_working_areas() will NULL out the "area" pointer
437 * upon resuming or resetting the CPU.
440 int target_alloc_working_area(struct target
*target
,
441 uint32_t size
, struct working_area
**area
);
442 int target_free_working_area(struct target
*target
, struct working_area
*area
);
443 int target_free_working_area_restore(struct target
*target
,
444 struct working_area
*area
, int restore
);
445 void target_free_all_working_areas(struct target
*target
);
446 void target_free_all_working_areas_restore(struct target
*target
, int restore
);
448 extern struct target
*all_targets
;
450 extern struct target_event_callback
*target_event_callbacks
;
451 extern struct target_timer_callback
*target_timer_callbacks
;
453 uint32_t target_buffer_get_u32(struct target
*target
, const uint8_t *buffer
);
454 uint16_t target_buffer_get_u16(struct target
*target
, const uint8_t *buffer
);
455 uint8_t target_buffer_get_u8 (struct target
*target
, const uint8_t *buffer
);
456 void target_buffer_set_u32(struct target
*target
, uint8_t *buffer
, uint32_t value
);
457 void target_buffer_set_u16(struct target
*target
, uint8_t *buffer
, uint16_t value
);
458 void target_buffer_set_u8 (struct target
*target
, uint8_t *buffer
, uint8_t value
);
460 int target_read_u32(struct target
*target
, uint32_t address
, uint32_t *value
);
461 int target_read_u16(struct target
*target
, uint32_t address
, uint16_t *value
);
462 int target_read_u8(struct target
*target
, uint32_t address
, uint8_t *value
);
463 int target_write_u32(struct target
*target
, uint32_t address
, uint32_t value
);
464 int target_write_u16(struct target
*target
, uint32_t address
, uint16_t value
);
465 int target_write_u8(struct target
*target
, uint32_t address
, uint8_t value
);
467 /* Issues USER() statements with target state information */
468 int target_arch_state(struct target
*target
);
470 void target_handle_event(struct target
*t
, enum target_event e
);
471 void target_all_handle_event(enum target_event e
);
473 #define ERROR_TARGET_INVALID (-300)
474 #define ERROR_TARGET_INIT_FAILED (-301)
475 #define ERROR_TARGET_TIMEOUT (-302)
476 #define ERROR_TARGET_NOT_HALTED (-304)
477 #define ERROR_TARGET_FAILURE (-305)
478 #define ERROR_TARGET_UNALIGNED_ACCESS (-306)
479 #define ERROR_TARGET_DATA_ABORT (-307)
480 #define ERROR_TARGET_RESOURCE_NOT_AVAILABLE (-308)
481 #define ERROR_TARGET_TRANSLATION_FAULT (-309)
482 #define ERROR_TARGET_NOT_RUNNING (-310)
483 #define ERROR_TARGET_NOT_EXAMINED (-311)
485 extern const Jim_Nvp nvp_error_target
[];
487 const char *target_strerror_safe(int err
);
489 #endif /* TARGET_H */