arm_adi_v5: dap_queue_ap_* DAP->AP parameter
[fw/openocd] / src / target / target.c
index 8a7547b8a706a46332928b1bad6c4d81f054883b..598d7d5a8043303b4ddbef21082c19bd9e7cb262 100644 (file)
@@ -140,6 +140,7 @@ struct target *all_targets;
 static struct target_event_callback *target_event_callbacks;
 static struct target_timer_callback *target_timer_callbacks;
 LIST_HEAD(target_reset_callback_list);
+LIST_HEAD(target_trace_callback_list);
 static const int polling_interval = 100;
 
 static const Jim_Nvp nvp_assert[] = {
@@ -486,7 +487,7 @@ struct target *get_target(const char *id)
 }
 
 /* returns a pointer to the n-th configured target */
-static struct target *get_target_by_num(int num)
+struct target *get_target_by_num(int num)
 {
        struct target *target = all_targets;
 
@@ -1021,6 +1022,10 @@ int target_read_memory(struct target *target,
                LOG_ERROR("Target not examined yet");
                return ERROR_FAIL;
        }
+       if (!target->type->read_memory) {
+               LOG_ERROR("Target %s doesn't support read_memory", target_name(target));
+               return ERROR_FAIL;
+       }
        return target->type->read_memory(target, address, size, count, buffer);
 }
 
@@ -1031,6 +1036,10 @@ int target_read_phys_memory(struct target *target,
                LOG_ERROR("Target not examined yet");
                return ERROR_FAIL;
        }
+       if (!target->type->read_phys_memory) {
+               LOG_ERROR("Target %s doesn't support read_phys_memory", target_name(target));
+               return ERROR_FAIL;
+       }
        return target->type->read_phys_memory(target, address, size, count, buffer);
 }
 
@@ -1041,6 +1050,10 @@ int target_write_memory(struct target *target,
                LOG_ERROR("Target not examined yet");
                return ERROR_FAIL;
        }
+       if (!target->type->write_memory) {
+               LOG_ERROR("Target %s doesn't support write_memory", target_name(target));
+               return ERROR_FAIL;
+       }
        return target->type->write_memory(target, address, size, count, buffer);
 }
 
@@ -1051,6 +1064,10 @@ int target_write_phys_memory(struct target *target,
                LOG_ERROR("Target not examined yet");
                return ERROR_FAIL;
        }
+       if (!target->type->write_phys_memory) {
+               LOG_ERROR("Target %s doesn't support write_phys_memory", target_name(target));
+               return ERROR_FAIL;
+       }
        return target->type->write_phys_memory(target, address, size, count, buffer);
 }
 
@@ -1172,20 +1189,6 @@ static void target_reset_examined(struct target *target)
        target->examined = false;
 }
 
-static int err_read_phys_memory(struct target *target, uint32_t address,
-               uint32_t size, uint32_t count, uint8_t *buffer)
-{
-       LOG_ERROR("Not implemented: %s", __func__);
-       return ERROR_FAIL;
-}
-
-static int err_write_phys_memory(struct target *target, uint32_t address,
-               uint32_t size, uint32_t count, const uint8_t *buffer)
-{
-       LOG_ERROR("Not implemented: %s", __func__);
-       return ERROR_FAIL;
-}
-
 static int handle_target(void *priv);
 
 static int target_init_one(struct command_context *cmd_ctx,
@@ -1212,16 +1215,6 @@ static int target_init_one(struct command_context *cmd_ctx,
         * implement it in stages, but warn if we need to do so.
         */
        if (type->mmu) {
-               if (type->write_phys_memory == NULL) {
-                       LOG_ERROR("type '%s' is missing write_phys_memory",
-                                       type->name);
-                       type->write_phys_memory = err_write_phys_memory;
-               }
-               if (type->read_phys_memory == NULL) {
-                       LOG_ERROR("type '%s' is missing read_phys_memory",
-                                       type->name);
-                       type->read_phys_memory = err_read_phys_memory;
-               }
                if (type->virt2phys == NULL) {
                        LOG_ERROR("type '%s' is missing virt2phys", type->name);
                        type->virt2phys = identity_virt2phys;
@@ -1358,6 +1351,28 @@ int target_register_reset_callback(int (*callback)(struct target *target,
        return ERROR_OK;
 }
 
+int target_register_trace_callback(int (*callback)(struct target *target,
+               size_t len, uint8_t *data, void *priv), void *priv)
+{
+       struct target_trace_callback *entry;
+
+       if (callback == NULL)
+               return ERROR_COMMAND_SYNTAX_ERROR;
+
+       entry = malloc(sizeof(struct target_trace_callback));
+       if (entry == NULL) {
+               LOG_ERROR("error allocating buffer for trace callback entry");
+               return ERROR_COMMAND_SYNTAX_ERROR;
+       }
+
+       entry->callback = callback;
+       entry->priv = priv;
+       list_add(&entry->list, &target_trace_callback_list);
+
+
+       return ERROR_OK;
+}
+
 int target_register_timer_callback(int (*callback)(void *priv), int time_ms, int periodic, void *priv)
 {
        struct target_timer_callback **callbacks_p = &target_timer_callbacks;
@@ -1435,6 +1450,25 @@ int target_unregister_reset_callback(int (*callback)(struct target *target,
        return ERROR_OK;
 }
 
+int target_unregister_trace_callback(int (*callback)(struct target *target,
+               size_t len, uint8_t *data, void *priv), void *priv)
+{
+       struct target_trace_callback *entry;
+
+       if (callback == NULL)
+               return ERROR_COMMAND_SYNTAX_ERROR;
+
+       list_for_each_entry(entry, &target_trace_callback_list, list) {
+               if (entry->callback == callback && entry->priv == priv) {
+                       list_del(&entry->list);
+                       free(entry);
+                       break;
+               }
+       }
+
+       return ERROR_OK;
+}
+
 int target_unregister_timer_callback(int (*callback)(void *priv), void *priv)
 {
        if (callback == NULL)
@@ -1488,6 +1522,16 @@ int target_call_reset_callbacks(struct target *target, enum target_reset_mode re
        return ERROR_OK;
 }
 
+int target_call_trace_callbacks(struct target *target, size_t len, uint8_t *data)
+{
+       struct target_trace_callback *callback;
+
+       list_for_each_entry(callback, &target_trace_callback_list, list)
+               callback->callback(target, len, data, callback->priv);
+
+       return ERROR_OK;
+}
+
 static int target_timer_callback_periodic_restart(
                struct target_timer_callback *cb, struct timeval *now)
 {
@@ -1886,7 +1930,8 @@ int target_arch_state(struct target *target)
                return ERROR_OK;
        }
 
-       LOG_USER("target state: %s", target_state_name(target));
+       LOG_USER("%s: target state: %s", target_name(target),
+                target_state_name(target));
 
        if (target->state != TARGET_HALTED)
                return ERROR_OK;
@@ -2522,29 +2567,27 @@ static int handle_target(void *priv)
                                        target->backoff.times *= 2;
                                        target->backoff.times++;
                                }
-                               LOG_USER("Polling target %s failed, GDB will be halted. Polling again in %dms",
-                                               target_name(target),
-                                               target->backoff.times * polling_interval);
 
                                /* Tell GDB to halt the debugger. This allows the user to
                                 * run monitor commands to handle the situation.
                                 */
                                target_call_event_callbacks(target, TARGET_EVENT_GDB_HALT);
-                               return retval;
                        }
-                       /* Since we succeeded, we reset backoff count */
                        if (target->backoff.times > 0) {
-                               LOG_USER("Polling target %s succeeded again, trying to reexamine", target_name(target));
+                               LOG_USER("Polling target %s failed, trying to reexamine", target_name(target));
                                target_reset_examined(target);
                                retval = target_examine_one(target);
                                /* Target examination could have failed due to unstable connection,
                                 * but we set the examined flag anyway to repoll it later */
                                if (retval != ERROR_OK) {
                                        target->examined = true;
+                                       LOG_USER("Examination failed, GDB will be halted. Polling again in %dms",
+                                                target->backoff.times * polling_interval);
                                        return retval;
                                }
                        }
 
+                       /* Since we succeeded, we reset backoff count */
                        target->backoff.times = 0;
                }
        }
@@ -3220,12 +3263,12 @@ COMMAND_HANDLER(handle_dump_image_command)
        free(buffer);
 
        if ((ERROR_OK == retval) && (duration_measure(&bench) == ERROR_OK)) {
-               int filesize;
+               size_t filesize;
                retval = fileio_size(&fileio, &filesize);
                if (retval != ERROR_OK)
                        return retval;
                command_print(CMD_CTX,
-                               "dumped %ld bytes in %fs (%0.3f KiB/s)", (long)filesize,
+                               "dumped %zu bytes in %fs (%0.3f KiB/s)", filesize,
                                duration_elapsed(&bench), duration_kbps(&bench, filesize));
        }