343 lines
11 KiB
C
343 lines
11 KiB
C
/***************************************************************************
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* Copyright (C) 2011 by Broadcom Corporation *
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* Evan Hunter - ehunter@broadcom.com *
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* *
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* This program is free software; you can redistribute it and/or modify *
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* it under the terms of the GNU General Public License as published by *
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* the Free Software Foundation; either version 2 of the License, or *
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* (at your option) any later version. *
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* *
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* This program is distributed in the hope that it will be useful, *
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* but WITHOUT ANY WARRANTY; without even the implied warranty of *
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
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* GNU General Public License for more details. *
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* *
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* You should have received a copy of the GNU General Public License *
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* along with this program. If not, see <http://www.gnu.org/licenses/>. *
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***************************************************************************/
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#ifdef HAVE_CONFIG_H
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#include "config.h"
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#endif
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#include <helper/time_support.h>
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#include <jtag/jtag.h>
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#include "target/target.h"
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#include "target/target_type.h"
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#include "rtos.h"
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#include "helper/log.h"
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#include "helper/types.h"
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#include "rtos_embkernel_stackings.h"
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#define EMBKERNEL_MAX_THREAD_NAME_STR_SIZE (64)
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static bool embKernel_detect_rtos(struct target *target);
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static int embKernel_create(struct target *target);
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static int embKernel_update_threads(struct rtos *rtos);
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static int embKernel_get_thread_reg_list(struct rtos *rtos, int64_t thread_id, char **hex_reg_list);
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static int embKernel_get_symbol_list_to_lookup(symbol_table_elem_t *symbol_list[]);
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struct rtos_type embKernel_rtos = {
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.name = "embKernel",
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.detect_rtos = embKernel_detect_rtos,
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.create = embKernel_create,
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.update_threads = embKernel_update_threads,
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.get_thread_reg_list =
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embKernel_get_thread_reg_list,
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.get_symbol_list_to_lookup = embKernel_get_symbol_list_to_lookup,
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};
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enum {
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SYMBOL_ID_sCurrentTask = 0,
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SYMBOL_ID_sListReady = 1,
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SYMBOL_ID_sListSleep = 2,
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SYMBOL_ID_sListSuspended = 3,
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SYMBOL_ID_sMaxPriorities = 4,
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SYMBOL_ID_sCurrentTaskCount = 5,
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};
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static const char * const embKernel_symbol_list[] = {
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"Rtos::sCurrentTask",
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"Rtos::sListReady",
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"Rtos::sListSleep",
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"Rtos::sListSuspended",
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"Rtos::sMaxPriorities",
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"Rtos::sCurrentTaskCount",
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NULL };
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struct embKernel_params {
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const char *target_name;
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const unsigned char pointer_width;
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const unsigned char thread_count_width;
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const unsigned char rtos_list_size;
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const unsigned char thread_stack_offset;
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const unsigned char thread_name_offset;
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const unsigned char thread_priority_offset;
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const unsigned char thread_priority_width;
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const unsigned char iterable_next_offset;
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const unsigned char iterable_task_owner_offset;
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const struct rtos_register_stacking *stacking_info;
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};
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static const struct embKernel_params embKernel_params_list[] = {
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{
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"cortex_m", /* target_name */
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4, /* pointer_width */
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4, /* thread_count_width */
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8, /*rtos_list_size */
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0, /*thread_stack_offset */
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4, /*thread_name_offset */
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8, /*thread_priority_offset */
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4, /*thread_priority_width */
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4, /*iterable_next_offset */
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12, /*iterable_task_owner_offset */
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&rtos_embkernel_Cortex_M_stacking, /* stacking_info*/
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},
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{ "hla_target", /* target_name */
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4, /* pointer_width */
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4, /* thread_count_width */
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8, /*rtos_list_size */
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0, /*thread_stack_offset */
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4, /*thread_name_offset */
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8, /*thread_priority_offset */
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4, /*thread_priority_width */
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4, /*iterable_next_offset */
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12, /*iterable_task_owner_offset */
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&rtos_embkernel_Cortex_M_stacking, /* stacking_info */
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}
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};
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static bool embKernel_detect_rtos(struct target *target)
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{
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if (target->rtos->symbols != NULL) {
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if (target->rtos->symbols[SYMBOL_ID_sCurrentTask].address != 0)
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return true;
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}
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return false;
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}
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static int embKernel_create(struct target *target)
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{
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size_t i = 0;
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while ((i < ARRAY_SIZE(embKernel_params_list)) &&
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(0 != strcmp(embKernel_params_list[i].target_name, target->type->name)))
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i++;
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if (i >= ARRAY_SIZE(embKernel_params_list)) {
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LOG_WARNING("Could not find target \"%s\" in embKernel compatibility "
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"list", target->type->name);
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return -1;
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}
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target->rtos->rtos_specific_params = (void *) &embKernel_params_list[i];
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return 0;
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}
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static int embKernel_get_tasks_details(struct rtos *rtos, int64_t iterable, const struct embKernel_params *param,
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struct thread_detail *details, const char* state_str)
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{
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int64_t task = 0;
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int retval = target_read_buffer(rtos->target, iterable + param->iterable_task_owner_offset, param->pointer_width,
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(uint8_t *) &task);
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if (retval != ERROR_OK)
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return retval;
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details->threadid = (threadid_t) task;
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details->exists = true;
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int64_t name_ptr = 0;
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retval = target_read_buffer(rtos->target, task + param->thread_name_offset, param->pointer_width,
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(uint8_t *) &name_ptr);
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if (retval != ERROR_OK)
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return retval;
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details->thread_name_str = malloc(EMBKERNEL_MAX_THREAD_NAME_STR_SIZE);
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if (name_ptr) {
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retval = target_read_buffer(rtos->target, name_ptr, EMBKERNEL_MAX_THREAD_NAME_STR_SIZE,
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(uint8_t *) details->thread_name_str);
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if (retval != ERROR_OK)
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return retval;
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details->thread_name_str[EMBKERNEL_MAX_THREAD_NAME_STR_SIZE - 1] = 0;
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} else {
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snprintf(details->thread_name_str, EMBKERNEL_MAX_THREAD_NAME_STR_SIZE, "NoName:[0x%08X]", (unsigned int) task);
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}
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int64_t priority = 0;
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retval = target_read_buffer(rtos->target, task + param->thread_priority_offset, param->thread_priority_width,
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(uint8_t *) &priority);
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if (retval != ERROR_OK)
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return retval;
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details->extra_info_str = malloc(EMBKERNEL_MAX_THREAD_NAME_STR_SIZE);
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if (task == rtos->current_thread) {
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snprintf(details->extra_info_str, EMBKERNEL_MAX_THREAD_NAME_STR_SIZE, "State: Running, Priority: %u",
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(unsigned int) priority);
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} else {
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snprintf(details->extra_info_str, EMBKERNEL_MAX_THREAD_NAME_STR_SIZE, "State: %s, Priority: %u",
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state_str, (unsigned int) priority);
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}
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LOG_OUTPUT("Getting task details: iterable=0x%08X, task=0x%08X, name=%s\n", (unsigned int)iterable,
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(unsigned int)task, details->thread_name_str);
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return 0;
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}
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static int embKernel_update_threads(struct rtos *rtos)
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{
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/* int i = 0; */
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int retval;
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const struct embKernel_params *param;
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if (rtos == NULL)
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return -1;
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if (rtos->rtos_specific_params == NULL)
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return -3;
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if (rtos->symbols == NULL) {
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LOG_ERROR("No symbols for embKernel");
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return -4;
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}
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if (rtos->symbols[SYMBOL_ID_sCurrentTask].address == 0) {
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LOG_ERROR("Don't have the thread list head");
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return -2;
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}
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/* wipe out previous thread details if any */
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rtos_free_threadlist(rtos);
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param = (const struct embKernel_params *) rtos->rtos_specific_params;
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retval = target_read_buffer(rtos->target, rtos->symbols[SYMBOL_ID_sCurrentTask].address, param->pointer_width,
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(uint8_t *) &rtos->current_thread);
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if (retval != ERROR_OK) {
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LOG_ERROR("Error reading current thread in embKernel thread list");
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return retval;
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}
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int64_t max_used_priority = 0;
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retval = target_read_buffer(rtos->target, rtos->symbols[SYMBOL_ID_sMaxPriorities].address, param->pointer_width,
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(uint8_t *) &max_used_priority);
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if (retval != ERROR_OK)
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return retval;
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int thread_list_size = 0;
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retval = target_read_buffer(rtos->target, rtos->symbols[SYMBOL_ID_sCurrentTaskCount].address,
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param->thread_count_width, (uint8_t *) &thread_list_size);
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if (retval != ERROR_OK) {
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LOG_ERROR("Could not read embKernel thread count from target");
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return retval;
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}
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/* create space for new thread details */
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rtos->thread_details = malloc(sizeof(struct thread_detail) * thread_list_size);
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if (!rtos->thread_details) {
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LOG_ERROR("Error allocating memory for %d threads", thread_list_size);
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return ERROR_FAIL;
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}
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int threadIdx = 0;
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/* Look for ready tasks */
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for (int pri = 0; pri < max_used_priority; pri++) {
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/* Get first item in queue */
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int64_t iterable = 0;
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retval = target_read_buffer(rtos->target,
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rtos->symbols[SYMBOL_ID_sListReady].address + (pri * param->rtos_list_size), param->pointer_width,
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(uint8_t *) &iterable);
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if (retval != ERROR_OK)
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return retval;
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for (; iterable && threadIdx < thread_list_size; threadIdx++) {
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/* Get info from this iterable item */
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retval = embKernel_get_tasks_details(rtos, iterable, param, &rtos->thread_details[threadIdx], "Ready");
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if (retval != ERROR_OK)
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return retval;
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/* Get next iterable item */
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retval = target_read_buffer(rtos->target, iterable + param->iterable_next_offset, param->pointer_width,
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(uint8_t *) &iterable);
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if (retval != ERROR_OK)
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return retval;
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}
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}
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/* Look for sleeping tasks */
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int64_t iterable = 0;
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retval = target_read_buffer(rtos->target, rtos->symbols[SYMBOL_ID_sListSleep].address, param->pointer_width,
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(uint8_t *) &iterable);
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if (retval != ERROR_OK)
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return retval;
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for (; iterable && threadIdx < thread_list_size; threadIdx++) {
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/*Get info from this iterable item */
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retval = embKernel_get_tasks_details(rtos, iterable, param, &rtos->thread_details[threadIdx], "Sleeping");
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if (retval != ERROR_OK)
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return retval;
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/*Get next iterable item */
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retval = target_read_buffer(rtos->target, iterable + param->iterable_next_offset, param->pointer_width,
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(uint8_t *) &iterable);
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if (retval != ERROR_OK)
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return retval;
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}
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/* Look for suspended tasks */
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iterable = 0;
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retval = target_read_buffer(rtos->target, rtos->symbols[SYMBOL_ID_sListSuspended].address, param->pointer_width,
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(uint8_t *) &iterable);
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if (retval != ERROR_OK)
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return retval;
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for (; iterable && threadIdx < thread_list_size; threadIdx++) {
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/* Get info from this iterable item */
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retval = embKernel_get_tasks_details(rtos, iterable, param, &rtos->thread_details[threadIdx], "Suspended");
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if (retval != ERROR_OK)
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return retval;
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/*Get next iterable item */
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retval = target_read_buffer(rtos->target, iterable + param->iterable_next_offset, param->pointer_width,
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(uint8_t *) &iterable);
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if (retval != ERROR_OK)
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return retval;
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}
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rtos->thread_count = 0;
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rtos->thread_count = threadIdx;
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LOG_OUTPUT("Found %u tasks\n", (unsigned int)threadIdx);
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return 0;
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}
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static int embKernel_get_thread_reg_list(struct rtos *rtos, int64_t thread_id, char **hex_reg_list)
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{
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int retval;
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const struct embKernel_params *param;
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int64_t stack_ptr = 0;
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*hex_reg_list = NULL;
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if (rtos == NULL)
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return -1;
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if (thread_id == 0)
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return -2;
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if (rtos->rtos_specific_params == NULL)
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return -1;
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param = (const struct embKernel_params *) rtos->rtos_specific_params;
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/* Read the stack pointer */
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retval = target_read_buffer(rtos->target, thread_id + param->thread_stack_offset, param->pointer_width,
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(uint8_t *) &stack_ptr);
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if (retval != ERROR_OK) {
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LOG_ERROR("Error reading stack frame from embKernel thread");
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return retval;
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}
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return rtos_generic_stack_read(rtos->target, param->stacking_info, stack_ptr, hex_reg_list);
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}
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static int embKernel_get_symbol_list_to_lookup(symbol_table_elem_t *symbol_list[])
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{
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unsigned int i;
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*symbol_list = calloc(ARRAY_SIZE(embKernel_symbol_list), sizeof(symbol_table_elem_t));
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for (i = 0; i < ARRAY_SIZE(embKernel_symbol_list); i++)
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(*symbol_list)[i].symbol_name = embKernel_symbol_list[i];
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return 0;
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}
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